Greene George, Radhakrishna Harish, Tannenbaum Rina
School of Materials Science and Engineering, Georgia Institute of Technology, Atlanta, GA 30332, USA.
Biomaterials. 2005 Oct;26(30):5972-82. doi: 10.1016/j.biomaterials.2005.03.025.
In this study, we quantified the adsorption of immunoglobulin G (IgG) protein onto several polyelectrolyte-modified sintered porous polyethylene (PPE) membranes. The polymer surfaces had both cationic and anionic charges obtained via the adsorption of polyethylenimine (PEI) and polyacrylic acid (PAA), respectively, onto plasma-activated PPE. The amount of IgG adsorption was determined by measuring the gamma radiation emitted by [125I]-IgG radio labeled protein. By studying the impact of pH and ionic strength on IgG adsorption, we attempted to characterize the role and nature of the electrostatic interactions involved in the adsorption process to better understand how these interactions were influenced by the charge and structure of immobilized polyelectrolyte complexes at modified membrane surfaces. We were able to show that surface modification of PPE membranes with adsorbed PEI monolayers and PEI-PAA bilayers can greatly improve the IgG binding ability of the membrane under optimized conditions. We also showed that the observed improvement in the IgG binding is derived from electrostatic interactions between IgG and the polyelectrolyte surface. In addition, we found that the greatest IgG adsorption occurred when the IgG and the surface possessed predominantly opposite charges, rather than when the surface possessed the greatest electrostatic charge. Finally, we have found that the molecular weight of the terminating polyelectrolyte has a noticeable effect upon the electrostatic interactions between IgG and the PEI-PAA bilayer-modified PPE surfaces.
在本研究中,我们对免疫球蛋白G(IgG)蛋白在几种聚电解质改性的烧结多孔聚乙烯(PPE)膜上的吸附进行了定量分析。聚合物表面分别通过将聚乙烯亚胺(PEI)和聚丙烯酸(PAA)吸附到等离子体活化的PPE上而带有阳离子和阴离子电荷。IgG的吸附量通过测量[125I] -IgG放射性标记蛋白发出的γ辐射来确定。通过研究pH值和离子强度对IgG吸附的影响,我们试图表征吸附过程中涉及的静电相互作用的作用和性质,以便更好地理解这些相互作用是如何受到改性膜表面固定化聚电解质复合物的电荷和结构影响的。我们能够证明,在优化条件下,用吸附的PEI单层和PEI - PAA双层对PPE膜进行表面改性可以大大提高膜的IgG结合能力。我们还表明,观察到的IgG结合改善源于IgG与聚电解质表面之间的静电相互作用。此外,我们发现当IgG和表面主要带有相反电荷时,而不是当表面具有最大静电荷时,IgG的吸附量最大。最后,我们发现末端聚电解质的分子量对IgG与PEI - PAA双层改性的PPE表面之间的静电相互作用有显著影响。